Q.For the following question, two statements are given – one labelled as Assertion (A) and the other labelled as Reason (R). Select the correct answer from the codes (A), (B), (C) and (D) as given below. (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Assertion (A) is false, but Reason (R) is true. Assertion (A) : Addition of ethylene glycol to water lowers its freezing point. Reason (R) : Ethylene glycol is insoluble in water due to lack of its ability to form hydrogen bonds with water molecules.
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Start your 14-day free trial to unlock the full solution →Ethylene glycol does lower water's freezing point (colligative property), but the reason is wrong: ethylene glycol is highly soluble in water because it forms hydrogen bonds. Assertion true, Reason false → (C).
The question tests two ideas: colligative properties (freezing-point depression) and the solubility behaviour of ethylene glycol in water. Let's unpack each statement.
Understanding the Assertion
Ethylene glycol, , is a common antifreeze. When you dissolve a non-volatile solute in a solvent, the freezing point of the solution drops below that of the pure solvent. This is a colligative property — it depends on the number of solute particles, not their identity.
The freezing-point depression is given by
where is the cryoscopic constant of the solvent (water) and is the molality of the solution. Adding ethylene glycol introduces solute particles that disrupt the orderly arrangement of water molecules trying to form ice, so the solution must be cooled further to freeze.
Assertion (A) is true: ethylene glycol lowers the freezing point of water.
Examining the Reason
Now the Reason claims ethylene glycol is insoluble in water because it cannot form hydrogen bonds with water.
Look at the structure of ethylene glycol: it has two hydroxyl groups (). Each is polar and can act as both a hydrogen-bond donor (the H) and acceptor (the O lone pairs). Water molecules, , are also excellent hydrogen-bond donors and acceptors.
When ethylene glycol dissolves in water, extensive hydrogen bonding occurs between the groups of ethylene glycol and water molecules. This is why ethylene glycol is miscible with water in all proportions — it is highly soluble, not insoluble. …
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